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理想气体中缺乏等分配的能量分布。

Distribution of energy in the ideal gas that lacks equipartition.

机构信息

Institute for Single Crystals, NAS Ukraine, 60 Nauky Ave., Kharkov, 61001, Ukraine.

V. N. Karazin Kharkiv National University, 4 Svobody Sq., Kharkov, 61022, Ukraine.

出版信息

Sci Rep. 2023 Feb 28;13(1):3427. doi: 10.1038/s41598-023-30636-6.

Abstract

The energy and velocity distributions of ideal gas particles were first obtained by Boltzmann and Maxwell in the second half of the nineteenth century. In the case of a finite number of particles, the particle energy distribution was obtained by Boltzmann in 1868. However, it appears that this distribution is not valid for all vessels. A round vessel is a special case due to the additional integral of motion, the conservation of the gas angular momentum. This paper is intended to fill this gap, it provides the exact distribution of particle energy for a classical non-rotating ideal gas of a finite number of colliding particles in a round vessel. This previously unknown distribution was obtained analytically from the first principles, it includes the dependence on all the particle masses. The exact mean energies of gas particles are also found to depend on the system parameters, i.e., the distribution of energy over the degrees of freedom is not uniform. Therefore, the usual ideal gas model allows for the uneven energy partitioning, which we study here both theoretically and in simple numerical experiments.

摘要

理想气体粒子的能量和速度分布最早是由玻尔兹曼和麦克斯韦在 19 世纪后半叶得到的。对于有限数量的粒子,玻尔兹曼在 1868 年得到了粒子能量分布。然而,这种分布似乎并不适用于所有的容器。由于附加的运动积分,即气体角动量的守恒,圆形容器是一个特殊情况。本文旨在填补这一空白,它提供了在一个圆形容器中,具有有限数量碰撞粒子的经典非旋转理想气体的粒子能量的精确分布。这个以前未知的分布是从第一性原理出发,通过解析方法得到的,它包括了对所有粒子质量的依赖。气体粒子的精确平均能量也被发现取决于系统参数,即自由度上的能量分布不是均匀的。因此,通常的理想气体模型允许能量的不均匀分配,我们在这里从理论和简单的数值实验两个方面来研究它。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42c7/9974969/fefb5948bdc2/41598_2023_30636_Fig1_HTML.jpg

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